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古菌中的蛋白质糖基化:甜蜜与极端并存。

Protein glycosylation in Archaea: sweet and extreme.

机构信息

Department of Life Sciences, Ben Gurion University of the Negev, Beersheva 84105, Israel.

出版信息

Glycobiology. 2010 Sep;20(9):1065-76. doi: 10.1093/glycob/cwq055. Epub 2010 Apr 5.

Abstract

While each of the three domains of life on Earth possesses unique traits and relies on characteristic biological strategies, some processes are common to Eukarya, Bacteria and Archaea. Once believed to be restricted to Eukarya, it is now clear that Bacteria and Archaea are also capable of performing N-glycosylation. However, in contrast to Bacteria, where this posttranslational modification is still considered a rare event, numerous species of Archaea, isolated from a wide range of environments, have been reported to contain proteins bearing Asn-linked glycan moieties. Analysis of the chemical composition of the Asn-linked polysaccharides decorating archaeal proteins has, moreover, revealed the use of a wider variety of sugar subunits than seen in either eukaryal or bacterial glycoproteins. Still, although first reported some 30 years ago, little had been known of the steps or components involved in the archaeal version of this universal posttranslational modification. Now, with the availability of sufficient numbers of genome sequences and the development of appropriate experimental tools, molecular analysis of archaeal N-glycosylation pathways has become possible. Accordingly using halophilic, methanogenic and thermophilic model species, insight into the biosynthesis and attachment of N-linked glycans decorating archaeal glycoproteins is starting to amass. In this review, current understanding of N-glycosylation in Archaea is described.

摘要

尽管地球上的生命的三个领域都具有独特的特征,并依赖于特征性的生物策略,但有些过程是真核生物、细菌和古菌共有的。曾经被认为仅限于真核生物,现在很清楚,细菌和古菌也能够进行 N-糖基化。然而,与细菌不同的是,这种翻译后修饰仍然被认为是一种罕见的事件,已经报道了许多来自广泛环境的古菌物种,它们含有带有 Asn 连接聚糖部分的蛋白质。此外,对装饰古菌蛋白的 Asn 连接多糖的化学组成的分析表明,使用的糖亚基种类比真核或细菌糖蛋白中看到的更多。尽管早在 30 年前就首次报道了这种普遍的翻译后修饰的古菌版本,但对其涉及的步骤或成分知之甚少。现在,随着足够数量的基因组序列的出现和适当实验工具的开发,古菌 N-糖基化途径的分子分析成为可能。因此,使用嗜盐菌、产甲烷菌和嗜热模型物种,开始积累关于装饰古菌糖蛋白的 N-连接聚糖的生物合成和附着的见解。在这篇综述中,描述了目前对古菌 N-糖基化的理解。

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